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首页> 外文期刊>Journal of Medicinal Chemistry >Application of Fluorine- and Nitrogen-Walk Approaches: Defining the Structural and Functional Diversity of 2-Phenylindole Class of Cannabinoid 1 Receptor Positive Allosteric Modulators
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Application of Fluorine- and Nitrogen-Walk Approaches: Defining the Structural and Functional Diversity of 2-Phenylindole Class of Cannabinoid 1 Receptor Positive Allosteric Modulators

机译:氟和氮气步行方法的应用:定义大麻素1受体阳性仿生调节剂2-苯基吲哚类的结构和功能多样性

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摘要

Cannabinoid 1 receptor (CB1R) allosteric ligands hold a far-reaching therapeutic promise. We report the application of fluoro- and nitrogen-walk approaches to enhance the drug-like properties of GAT211, a prototype CB1R allosteric agonist-positive allosteric modulator (ago-PAM). Several analogs exhibited improved functional potency (cAMP, beta-arrestin 2), metabolic stability, and aqueous solubility. Two key analogs, GAT591 (6r) and GAT593 (6s), exhibited augmented allosteric-agonist and PAM activities in neuronal cultures, improved metabolic stability, and enhanced orthosteric agonist binding (CP55,940). Both analogs also exhibited good analgesic potency in the CFA inflammatory-pain model with longer duration of action over GAT211 while being devoid of adverse cannabimimetic effects. Another analog, GAT592 (9j), exhibited moderate ago-PAM potency and improved aqueous solubility with therapeutic reduction of intraocular pressure in murine glaucoma models. The SAR findings and the enhanced allosteric activity in this class of allosteric modulators were accounted for in our recently developed computational model for CB1R allosteric activation and positive allosteric modulation.
机译:大麻素1受体(CB1R)变构配体持有深远的治疗承诺。我们报告了氟和氮气步行方法的应用,以增强GAT211的药物状性质,一种原型CB1R变构激动剂阳性变构调制剂(AGA)。几种类似物表现出改善的功能性效力(营地,β-捕获2),代谢稳定性和含水溶解度。两种关键类似物,GAT591(6R)和GAT593(6S),在神经元培养物中表现出增强的变构 - 激动剂和PAM活性,改善代谢稳定性和增强的正向激动剂结合(CP55,940)。两种类似物在CFA炎性 - 疼痛模型中也表现出良好的镇痛效力,并且在GAT211上的作用持续时间较长,同时缺乏不良的大麻效应。另一种类似的模拟,GAT592(9J),表现出适度的峰值效力和改善水溶性水溶性,具有鼠荧光眼模型中的眼内压力的治疗。在我们最近开发的CB1R变构激活和积极变构调制中,SAR发现和这种颠覆调节剂中增强的颠覆活性占了这类变形调节剂的增强的颠振活动。

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  • 来源
    《Journal of Medicinal Chemistry》 |2020年第2期|共27页
  • 作者单位

    Northeastern Univ Bouve Coll Hlth Sci Sch Pharm Dept Pharmaceut Sci Boston MA 02115 USA;

    Northeastern Univ Bouve Coll Hlth Sci Sch Pharm Dept Pharmaceut Sci Boston MA 02115 USA;

    Northeastern Univ Bouve Coll Hlth Sci Sch Pharm Dept Pharmaceut Sci Boston MA 02115 USA;

    Temple Univ Lewis Katz Sch Med Ctr Subst Abuse Res Philadelphia PA 19140 USA;

    Univ Saskatchewan Coll Pharm &

    Nutr 104 Clin Pl Saskatoon SK S7N 2Z4 Canada;

    Univ Saskatchewan Coll Pharm &

    Nutr 104 Clin Pl Saskatoon SK S7N 2Z4 Canada;

    Univ Saskatchewan Coll Pharm &

    Nutr 104 Clin Pl Saskatoon SK S7N 2Z4 Canada;

    Indiana Univ Program Neurosci Psychol &

    Brain Sci Bloomington IN 47405 USA;

    Univ North Carolina Greensboro Ctr Drug Discovery Greensboro NC 27402 USA;

    Northeastern Univ Bouve Coll Hlth Sci Coll Sci &

    Hlth Sci Entrepreneurs Dept Chem &

    Chem Biol Dept Pharmaceut Sci Boston MA 02115 USA;

    Temple Univ Lewis Katz Sch Med Ctr Subst Abuse Res Philadelphia PA 19140 USA;

    Indiana Univ Program Neurosci Psychol &

    Brain Sci Bloomington IN 47405 USA;

    Indiana Univ Program Neurosci Psychol &

    Brain Sci Bloomington IN 47405 USA;

    Univ Aberdeen Inst Med Sci Sch Med Med Sci &

    Nutr Aberdeen AB25 2ZD Scotland;

    Dalhousie Univ Fac Med Dept Pharmacol 5850 Coll St Halifax NS B3H 4R2 Canada;

    Dalhousie Univ Fac Med Dept Pharmacol 5850 Coll St Halifax NS B3H 4R2 Canada;

    Dalhousie Univ Fac Med Dept Pharmacol 5850 Coll St Halifax NS B3H 4R2 Canada;

    Indiana Univ Program Neurosci Psychol &

    Brain Sci Bloomington IN 47405 USA;

    Indiana Univ Program Neurosci Psychol &

    Brain Sci Bloomington IN 47405 USA;

    Univ North Carolina Greensboro Ctr Drug Discovery Greensboro NC 27402 USA;

    Univ Saskatchewan Coll Pharm &

    Nutr 104 Clin Pl Saskatoon SK S7N 2Z4 Canada;

    Northeastern Univ Bouve Coll Hlth Sci Sch Pharm Dept Pharmaceut Sci Boston MA 02115 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 药学;
  • 关键词

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